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鼠冠状病毒MHV-A59一种丝氨酸样蛋白酶的鉴定与特性分析

Identification and characterization of a serine-like proteinase of the murine coronavirus MHV-A59.

作者信息

Lu Y, Lu X, Denison M R

机构信息

Department of Microbiology, Vanderbilt University Medical School, Nashville, Tennessee 37232-2581, USA.

出版信息

J Virol. 1995 Jun;69(6):3554-9. doi: 10.1128/JVI.69.6.3554-3559.1995.

Abstract

Gene 1 of the murine coronavirus, MHV-A59, encodes approximately 800 kDa of protein products within two overlapping open reading frames (ORFs 1a and 1b). The gene is expressed as a polyprotein that is processed into individual proteins, presumably by virus-encoded proteinases. ORF 1a has been predicted to encode proteins with similarity to viral and cellular proteinases, such as papain, and to the 3C proteinases of the picornaviruses (A. E. Gorbalenya, A. P. Donchenko, V. M. Blinov, and E. V. Koonin, FEBS Lett. 243:103-114, 1989; A. E. Gorbalenya, E. V. Koonin, A. P. Donchenko, and V. M. Blinov, Nucleic Acids Res. 17:4847-4861, 1989). We have cloned into a T7 transcription vector a cDNA fragment containing the putative 3C-like proteinase domain of MHV-A59, along with portions of the flanking hydrophobic domains. The construct was used to express a polypeptide in a combined in vitro transcription-translation system. Major polypeptides with molecular masses of 38 and 33 kDa were detected at early times, whereas polypeptides with molecular masses of 32 and 27 kDa were predominant after 30 to 45 min and appeared to be products of specific proteolysis of larger precursors. Mutations at the putative catalytic histidine and cysteine residues abolished the processing of the 27-kDa protein. Translation products of the pGpro construct were able to cleave the 27-kDa protein in trans from polypeptides expressed from the noncleaving histidine or cysteine mutants. The amino-terminal cleavage of the 27-kDa protein occurred at a glutamine-serine dipeptide as previously predicted. This study provides experimental confirmation that the coronaviruses express an active proteinase within the 3C-like proteinase domain of gene 1 ORF 1a and that this proteinase utilizes at least one canonical QS dipeptide as a cleavage site in vitro.

摘要

鼠冠状病毒MHV - A59的基因1在两个重叠的开放阅读框(ORF 1a和1b)内编码约800 kDa的蛋白质产物。该基因表达为一种多聚蛋白,可能由病毒编码的蛋白酶加工成单个蛋白质。据预测,ORF 1a编码的蛋白质与病毒和细胞蛋白酶(如木瓜蛋白酶)以及小RNA病毒的3C蛋白酶具有相似性(A. E. 戈尔巴连亚、A. P. 多琴科、V. M. 布利诺夫和E. V. 库宁,《欧洲分子生物学组织快报》243:103 - 114,1989年;A. E. 戈尔巴连亚、E. V. 库宁、A. P. 多琴科和V. M. 布利诺夫,《核酸研究》17:4847 - 4861,1989年)。我们已将包含MHV - A59假定的3C样蛋白酶结构域以及部分侧翼疏水结构域的cDNA片段克隆到T7转录载体中。该构建体用于在体外转录 - 翻译联合系统中表达一种多肽。早期检测到分子量为38 kDa和33 kDa的主要多肽,而分子量为32 kDa和27 kDa的多肽在30至45分钟后占主导地位,并且似乎是较大前体特异性蛋白水解的产物。假定的催化组氨酸和半胱氨酸残基处的突变消除了27 kDa蛋白的加工。pGpro构建体的翻译产物能够从非切割组氨酸或半胱氨酸突变体表达的多肽中反式切割27 kDa蛋白。如先前预测的那样,27 kDa蛋白的氨基末端切割发生在谷氨酰胺 - 丝氨酸二肽处。这项研究提供了实验证据,证明冠状病毒在基因1的ORF 1a的3C样蛋白酶结构域内表达一种活性蛋白酶,并且这种蛋白酶在体外至少利用一个典型的QS二肽作为切割位点。

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